Mid-infrared absorption spectroscopy is a powerful tool for optically probing the molecular structure of biological samples. However, using conventional approaches, IR measurements on small quantities of molecules are extremely challenging due to sensitivity limitations. The strong IR absorption of liquid water presents additional obstacles to performing measurements in biomolecules' native, aqueous environments. In this review we discuss the application of engineered plasmonic nanoantennas to overcoming these challenges. We provide overviews and highlight the key concepts of our recent work in designing infrared antennas and applying them to enhance the absorption of minute quantities of biomolecules as well as new fabrication methods for ...
Plasmonic anisotropic nanoparticles possess a number of hot spots on their surface due to the presen...
In this paper, III-IV semiconductors are demonstrated as strong candidates for plasmonics applicatio...
Electromagnetic interactions in nanoscale systems are a driving force of research in the field of na...
Infrared spectroscopy is widely used for biomolecular studies, but struggles when investigating minu...
Engineered plasmonic nanostructures have emerged as powerful sensing platforms and are promoting nov...
Infrared spectroscopy is widely used for biomolecular studies, but struggles when investigating minu...
We fabricated large-area metallic (Al and Au) nanoantenna arrays on Si substrates using cost-effecti...
Nowadays, accessing to new electromagnetic properties can be realized by fabricating metamaterials c...
We report on tuning the plasmonic properties of gold nanoantenna arrays resonant in the infrared (IR...
Infrared vibrations of molecular species can be enhanced by several orders of magnitude with plasmon...
In this study, we introduce a sensing platform based on plasmonic metamaterial absorbers (MAs) with ...
The introduction of narrow band perfect absorbers (PAs) operating in mid-infrared (IR) frequencies h...
Plasmonic antennas have been widely used to enhance the infrared absorption of molecular moieties, o...
In-situ ultra-sensitive infrared absorption spectroscopy of biomolecule interactions in real time wi...
We report on the fabrication and systematic characterization of nanoantenna arrays with several diff...
Plasmonic anisotropic nanoparticles possess a number of hot spots on their surface due to the presen...
In this paper, III-IV semiconductors are demonstrated as strong candidates for plasmonics applicatio...
Electromagnetic interactions in nanoscale systems are a driving force of research in the field of na...
Infrared spectroscopy is widely used for biomolecular studies, but struggles when investigating minu...
Engineered plasmonic nanostructures have emerged as powerful sensing platforms and are promoting nov...
Infrared spectroscopy is widely used for biomolecular studies, but struggles when investigating minu...
We fabricated large-area metallic (Al and Au) nanoantenna arrays on Si substrates using cost-effecti...
Nowadays, accessing to new electromagnetic properties can be realized by fabricating metamaterials c...
We report on tuning the plasmonic properties of gold nanoantenna arrays resonant in the infrared (IR...
Infrared vibrations of molecular species can be enhanced by several orders of magnitude with plasmon...
In this study, we introduce a sensing platform based on plasmonic metamaterial absorbers (MAs) with ...
The introduction of narrow band perfect absorbers (PAs) operating in mid-infrared (IR) frequencies h...
Plasmonic antennas have been widely used to enhance the infrared absorption of molecular moieties, o...
In-situ ultra-sensitive infrared absorption spectroscopy of biomolecule interactions in real time wi...
We report on the fabrication and systematic characterization of nanoantenna arrays with several diff...
Plasmonic anisotropic nanoparticles possess a number of hot spots on their surface due to the presen...
In this paper, III-IV semiconductors are demonstrated as strong candidates for plasmonics applicatio...
Electromagnetic interactions in nanoscale systems are a driving force of research in the field of na...